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亚铁代谢在响应苯肼诱导的溶血的亚铁调素 1 敲除小鼠中的变化。

Iron metabolism in hepcidin1 knockout mice in response to phenylhydrazine-induced hemolysis.

机构信息

Diabetes and Nutritional Sciences Division, School of Medicine, King's College London, 150 Stamford Street, London SE1 9NH, UK.

出版信息

Blood Cells Mol Dis. 2012 Aug 15;49(2):85-91. doi: 10.1016/j.bcmd.2012.04.003. Epub 2012 May 19.

Abstract

Hepcidin, an iron regulatory peptide, plays a central role in the maintenance of systemic iron homeostasis by inducing the internalization and degradation of the iron exporter, ferroportin. Hepcidin expression in the liver is regulated in response to several stimuli including iron status, erythropoietic activity, hypoxia and inflammation. Hepcidin expression has been shown to be reduced in phenylhydrazine-treated mice, a mouse model of acute hemolysis. In this mouse model, hepcidin suppression was associated with increased expression of molecules involved in iron transport and recycling. The present study aims to explore whether the response to phenylhydrazine treatment is affected by hepcidin deficiency and/or the subsequently altered iron metabolism. Hepcidin1 knockout (Hamp(-/-)) and wild type mice were treated with phenylhydrazine or saline and parameters of iron homeostasis were determined 3 days after the treatment. In wild type mice, phenylhydrazine administration resulted in significantly reduced serum iron, increased tissue non-heme iron levels and suppressed hepcidin expression. The treatment was also associated with increases in membrane ferroportin protein levels and spleen heme oxygenase 1 mRNA expression. In addition, trends toward increased mRNA expression of duodenal iron transporters were also observed. In contrast, serum iron and tissue non-heme iron levels in Hamp(-/-) mice were unaffected by the treatment. Moreover, the effects of phenylhydrazine on the expression of ferroportin and duodenal iron transporters were not observed in Hamp(-/-) mice. Interestingly, mRNA levels of molecules involved in splenic heme uptake and degradation were significantly induced by Hamp disruption. In summary, our study demonstrates that the response to phenylhydrazine-induced hemolysis differs between wild type and Hamp(-/-) mice. This observation may be caused by the absence of hepcidin per se or the altered iron homeostasis induced by the lack of hepcidin in these mice.

摘要

亚铁调素是一种铁调节肽,通过诱导铁输出蛋白铁蛋白的内化和降解,在维持全身铁稳态中发挥核心作用。肝脏中铁调素的表达受多种刺激的调节,包括铁状态、红细胞生成活性、缺氧和炎症。研究表明,在苯肼处理的小鼠(一种急性溶血性小鼠模型)中,铁调素的表达减少。在这种小鼠模型中,铁调素抑制与铁转运和再循环相关分子的表达增加有关。本研究旨在探讨铁调素缺乏和/或随后改变的铁代谢是否会影响苯肼处理的反应。用苯肼或生理盐水处理铁调素 1 基因敲除(Hamp(-/-))和野生型小鼠,并在处理后 3 天测定铁稳态的参数。在野生型小鼠中,苯肼给药导致血清铁明显减少,组织非血红素铁水平增加,铁调素表达受到抑制。该治疗还与膜铁蛋白蛋白水平升高和脾脏血红素加氧酶 1 mRNA 表达增加相关。此外,还观察到十二指肠铁转运体的 mRNA 表达增加的趋势。相比之下, Hamp(-/-)小鼠的血清铁和组织非血红素铁水平不受该治疗的影响。此外,在 Hamp(-/-)小鼠中未观察到苯肼对铁蛋白和十二指肠铁转运体表达的影响。有趣的是,Hamp 缺失显著诱导脾脏血红素摄取和降解相关分子的 mRNA 水平。总之,我们的研究表明,野生型和 Hamp(-/-)小鼠对苯肼诱导的溶血性反应不同。这种观察结果可能是由于铁调素本身的缺失或由于这些小鼠缺乏铁调素而导致的铁稳态改变所致。

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